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A Convenient Analytical Framework for Electromagnetic Scattering From Composite Targets

机译:一种方便的复合目标电磁散射分析框架

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摘要

This paper furnishes a convenient theoretical framework for the analytical evaluation of the bistatic scattering coefficients, under the Kirchhoff approximation (KA) in electromagnetics. Starting from the KA, specific results under the geometrical optics and physical optics approximations are furnished, along with the backscattering geometry. The main aim is to provide closed-form expressions of the scattering matrix that are suited to scenarios where multiple-bounce scattering comes into play and/or surfaces with arbitrary unit normal are present. This is accomplished by addressing the following objectives: (1) to provide an explicit formulation of the scattering matrix under KA in terms of the incident and scattered unit wave vectors, (2) to provide a more generic derivation of the scattering matrix under the physical optics approximation by relaxing typical hypotheses regarding the geometry of the scattering problem, and (3) to highlight some important symmetries of the scattering matrix under KA. It is shown that the scattering matrix under KA can conveniently be expressed in terms of few variables, thus greatly reducing the complexity of the theoretical derivation of the scattering matrix. Some benefits of the proposed formalism are illustrated in two application examples, where the problem is the analysis of the electromagnetic scattering from canonical composite targets. The canonical study cases demonstrate the evaluation of the scattering matrix in complex scenarios, such as maritime and urban environments, where multiple-bounce contributions and/or contributions from tilted surfaces come into play. Finally, comparisons with literature results allow for validating the proposed derivation and assessing its validity limits in practical applications.
机译:本文为电磁学的Kirchhoff近似(Ka)下,提供了一种方便的理论框架,用于对双孔散射系数的分析评估。从KA开始,在几何光学和物理光学近似下的特定结果提供,以及背散射几何。主要目的是提供适合于场景的散射矩阵的闭合形式表达,其中多次反冲散射进入播放和/或具有任意单位正常的表面。这是通过解决以下目的来实现的:(1)在入射和散射单元波矢量方面提供KA下的散射矩阵的显式配方,(2)以在物理下提供散射矩阵的更通用推导光学通过在散射问题的几何形状放宽典型假设的逼近,(3)突出KA下散射矩阵的一些重要对称。结果表明,Ka下的散射矩阵可以方便地以几个变量表达,从而大大降低了散射矩阵的理论推导的复杂性。在两个应用示例中说明了所提出的形式主义的一些好处,其中问题是从规范复合靶标的电磁散射的分析。规范研究病例展示了在复杂场景中的散射矩阵的评估,例如海上和城市环境,其中多次反弹贡献和/或来自倾斜表面的贡献。最后,具有文学结果的比较允许验证所提出的推导并评估其在实际应用中的有效性限制。

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